PEG-functionalized UiO-66 MOFs for targeted vincristine delivery: enhanced cytotoxicity in breast and ovarian cancer cell lines

Abstract Vincristine (VIN) inhibits microtubule formation in the mitotic spindle, effectively arresting cells in mitosis. This study aimed to develop a polyethylene glycol (PEG)-functionalized UiO-66 metal–organic framework (MOF) as a targeted drug delivery system for VIN in MDA-MB-231 (breast cance...

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Main Authors: Zahra Sadeghi Jam, Farzaneh Tafvizi, Parvin Khodarahmi, Parvaneh Jafari, Fahimeh Baghbani-Arani
Format: Article
Language:English
Published: BMC 2025-03-01
Series:Cancer Nanotechnology
Subjects:
Online Access:https://doi.org/10.1186/s12645-025-00315-4
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author Zahra Sadeghi Jam
Farzaneh Tafvizi
Parvin Khodarahmi
Parvaneh Jafari
Fahimeh Baghbani-Arani
author_facet Zahra Sadeghi Jam
Farzaneh Tafvizi
Parvin Khodarahmi
Parvaneh Jafari
Fahimeh Baghbani-Arani
author_sort Zahra Sadeghi Jam
collection DOAJ
description Abstract Vincristine (VIN) inhibits microtubule formation in the mitotic spindle, effectively arresting cells in mitosis. This study aimed to develop a polyethylene glycol (PEG)-functionalized UiO-66 metal–organic framework (MOF) as a targeted drug delivery system for VIN in MDA-MB-231 (breast cancer) and A2780 (ovarian cancer) cell lines. The synthesized UiO-66–VIN–PEG nanoparticles exhibited a mean diameter of 223.5 ± 7.45 nm with a spherical morphology. Fourier transform infrared spectroscopy (FT-IR) confirmed successful VIN loading onto the UiO-66 structure. Drug release studies demonstrated a gradual, pH-dependent release profile, with VIN release reaching 55% at pH 7.4 and 75% at pH 5.4 over 72 h, highlighting the system's responsiveness to the acidic tumor microenvironment. Stability assessments indicated that size, polydispersity index (PDI), and entrapment efficiency (EE%) remained more stable at 4 °C compared to 25 °C. In vitro experiments demonstrated significant cytotoxicity and apoptosis induction in MDA-MB-231 and A2780 cells. This was evidenced by increased expression of pro-apoptotic genes (BAX, P53) and suppression of anti-apoptotic and cell cycle-regulatory genes (BCL-2, CCND1, and CDK4). In addition, a notable elevation in DCF fluorescence was observed in UiO-66–VIN-treated and UiO-66–VIN–PEG-treated cells compared to controls. These findings underscore the potential of UiO-66–VIN–PEG as a pH-responsive, targeted drug delivery platform for enhancing VIN's anti-cancer efficacy in breast and ovarian cancer. Graphical Abstract
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spelling doaj-art-a476d8a809e94375977998fec70bc3972025-08-20T02:59:19ZengBMCCancer Nanotechnology1868-69581868-69662025-03-0116112310.1186/s12645-025-00315-4PEG-functionalized UiO-66 MOFs for targeted vincristine delivery: enhanced cytotoxicity in breast and ovarian cancer cell linesZahra Sadeghi Jam0Farzaneh Tafvizi1Parvin Khodarahmi2Parvaneh Jafari3Fahimeh Baghbani-Arani4Department of Biology, Parand Branch, Islamic Azad UniversityDepartment of Biology, Parand Branch, Islamic Azad UniversityDepartment of Biology, Parand Branch, Islamic Azad UniversityMicrobiology Department, Faculty of Science, Arak Branch, Islamic Azad UniversityDepartment of Genetics and Biotechnology, School of Biological Science, Varamin-Pishva Branch, Islamic Azad UniversityAbstract Vincristine (VIN) inhibits microtubule formation in the mitotic spindle, effectively arresting cells in mitosis. This study aimed to develop a polyethylene glycol (PEG)-functionalized UiO-66 metal–organic framework (MOF) as a targeted drug delivery system for VIN in MDA-MB-231 (breast cancer) and A2780 (ovarian cancer) cell lines. The synthesized UiO-66–VIN–PEG nanoparticles exhibited a mean diameter of 223.5 ± 7.45 nm with a spherical morphology. Fourier transform infrared spectroscopy (FT-IR) confirmed successful VIN loading onto the UiO-66 structure. Drug release studies demonstrated a gradual, pH-dependent release profile, with VIN release reaching 55% at pH 7.4 and 75% at pH 5.4 over 72 h, highlighting the system's responsiveness to the acidic tumor microenvironment. Stability assessments indicated that size, polydispersity index (PDI), and entrapment efficiency (EE%) remained more stable at 4 °C compared to 25 °C. In vitro experiments demonstrated significant cytotoxicity and apoptosis induction in MDA-MB-231 and A2780 cells. This was evidenced by increased expression of pro-apoptotic genes (BAX, P53) and suppression of anti-apoptotic and cell cycle-regulatory genes (BCL-2, CCND1, and CDK4). In addition, a notable elevation in DCF fluorescence was observed in UiO-66–VIN-treated and UiO-66–VIN–PEG-treated cells compared to controls. These findings underscore the potential of UiO-66–VIN–PEG as a pH-responsive, targeted drug delivery platform for enhancing VIN's anti-cancer efficacy in breast and ovarian cancer. Graphical Abstracthttps://doi.org/10.1186/s12645-025-00315-4ApoptosisBreast cancerMetal–organic frameworkOvarian cancerVincristine
spellingShingle Zahra Sadeghi Jam
Farzaneh Tafvizi
Parvin Khodarahmi
Parvaneh Jafari
Fahimeh Baghbani-Arani
PEG-functionalized UiO-66 MOFs for targeted vincristine delivery: enhanced cytotoxicity in breast and ovarian cancer cell lines
Cancer Nanotechnology
Apoptosis
Breast cancer
Metal–organic framework
Ovarian cancer
Vincristine
title PEG-functionalized UiO-66 MOFs for targeted vincristine delivery: enhanced cytotoxicity in breast and ovarian cancer cell lines
title_full PEG-functionalized UiO-66 MOFs for targeted vincristine delivery: enhanced cytotoxicity in breast and ovarian cancer cell lines
title_fullStr PEG-functionalized UiO-66 MOFs for targeted vincristine delivery: enhanced cytotoxicity in breast and ovarian cancer cell lines
title_full_unstemmed PEG-functionalized UiO-66 MOFs for targeted vincristine delivery: enhanced cytotoxicity in breast and ovarian cancer cell lines
title_short PEG-functionalized UiO-66 MOFs for targeted vincristine delivery: enhanced cytotoxicity in breast and ovarian cancer cell lines
title_sort peg functionalized uio 66 mofs for targeted vincristine delivery enhanced cytotoxicity in breast and ovarian cancer cell lines
topic Apoptosis
Breast cancer
Metal–organic framework
Ovarian cancer
Vincristine
url https://doi.org/10.1186/s12645-025-00315-4
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